2021
DOI: 10.1021/acs.analchem.0c04326
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Dynamic Sensor Concept Combining Electrochemical pH Manipulation and Optical Sensing of Buffer Capacity

Abstract: State-of-the-art electrochemical and optical sensors present distinct advantages and disadvantages when used individually. Combining both methodologies offers interesting synergies and makes it possible to exploit strengths and circumvent possible problems of the individual methods. We report a dynamic sensing concept for buffer capacity by applying water electrolysis to modulate the pH microenvironment in front of an optical pH sensor placed in a flow cell. Using this combinatory approach in a nonequilibrium … Show more

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Cited by 19 publications
(16 citation statements)
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“…Such a well-controlled sample acidification has been claimed to be very beneficial for a wide range of applications involving either the exhaustive tuning of the pH in the sample or reagentless acidification procedure to fix a desired pH value in the sample. 2,24,28,45,46 Protocol for Reagentless Titration Utilizing Discrete Charge Injections. We next explored the pH that was reached in the sample once several proton packages of a certain duration were increasingly released to the sample, i.e., in a discrete mode.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
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“…Such a well-controlled sample acidification has been claimed to be very beneficial for a wide range of applications involving either the exhaustive tuning of the pH in the sample or reagentless acidification procedure to fix a desired pH value in the sample. 2,24,28,45,46 Protocol for Reagentless Titration Utilizing Discrete Charge Injections. We next explored the pH that was reached in the sample once several proton packages of a certain duration were increasingly released to the sample, i.e., in a discrete mode.…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…2.5. Such a well-controlled sample acidification has been claimed to be very beneficial for a wide range of applications involving either the exhaustive tuning of the pH in the sample or reagentless acidification procedure to fix a desired pH value in the sample. ,,,, …”
Section: Resultsmentioning
confidence: 99%
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“…Alternatively, several microfluidic approaches using a combination of pH modification and a sensing platform have been investigated. The pH shift can be achieved by adding acid/base or bulk buffers or by electrochemical methods like water electrolysis and membrane-based proton pumps. , Such local pH modifications were successfully used to determine DIC by a combination with CO 3 2– ion selective electrodes or conductivity measurement . However, most microfluidic devices are inherently prone to clogging and require external pumping systems to introduce sample into the channel.…”
mentioning
confidence: 99%